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A Rando

Publications and source records attributed to A Rando.

31 records · Page 2Linked to original sources

DNA polymorphism at the casein loci in sheep.

By using seven endonucleases and four bovine cDNA probes specific for alpha S1-, alpha S2-, beta-, and kappa-casein genes, nine restriction fragment length polymorphisms (RFLPs) have been found in the sheep orthologous DNA regions. In contrast to the low level of variation observed at the protein level, these DNA polymorphisms determine a high level of heterozygosity and, therefore, represent useful tools for genetic analyses since they can also be obtained without the need for gene expression. In fact, informative matings suggest that in sheep, as in cattle, the four loci are linked.

Animals↗

Expression of triplicated and quadruplicated alpha globin genes in sheep.

In the sheep alpha alpha alpha globin gene haplotype, the three genes display from the 5' to the 3' end the percentage efficiencies of about 30:14:6, as indicated by the amounts of the three types of alpha chain produced in the alpha alpha alpha/alpha alpha alpha homozygotes. The 3' gene in the alpha alpha alpha alpha haplotype appears to have an efficiency around 1%, as suggested by analysis of one quadruple alpha homozygote. Moreover, the total outputs of the alpha alpha alpha as well as of the alpha alpha alpha alpha haplotypes do not substantially differ from that of the common alpha alpha haplotype.

Animals↗

Mitochondrial phosphoenolpyruvate carboxykinase from the chicken. Comparison of the cDNA and protein sequences with the cytosolic isozyme.

The amino acid sequence of the mitochondrial form of phosphoenolpyruvate carboxykinase (GTP) (EC 4.1.1.32) (PEPCK-M) from the chicken was deduced from the 3571 nucleotide sequence of three overlapping cDNA clones. The derived protein sequence, which includes 607 amino acids of the mature enzyme and a leader sequence, was aligned with nine tryptic peptides of PEPCK-M and the primary sequence of the cytosolic form of PEPCK from chicken. Secondary structure predictions for the two PEPCK isozymes indicated similar packing elements of conserved, hydrophobic beta strands in the central core of the primary sequence. This core protein, which contained three GTP-binding consensus elements, was 80% identical in the two chicken isozymes, although the overall level of identity was only 63% for amino acids and 60% for nucleotides. The untranslated regions of the two cDNAs were dissimilar, although both mRNAs have potential for significant secondary structure. The PEPCK-M mRNA contained several G-C-rich regions which demonstrated free energies of formation in dyad symmetry programs up to -70 kcal/mol. The 1.6-kilobase (kb) 3'-untranslated region contained several repeat elements including one of 11 base pairs, which was present 30 times; but, a signal sequence for polyadenylation was not present. Each of the three PEPCK-M cDNA clones recognized two mRNAs of 4.2 and 3.4 kb in the livers and kidneys of starved or normally fed chickens. However, the level of these two related PEPCK-M mRNAs changed in response to cAMP treatment, with the larger mRNA predominant at 20 and 160 min and the 3.4-kb mRNA present at intermediate times. In contrast, the level of the 2.8-kb PEPCK-C mRNA increased dramatically upon addition of the cyclic nucleotide, particularly in the liver where it was not detected without cAMP induction. Thus, PEPCK-M and PEPCK-C, clearly represented the products of two distinct genes, which were distinguished by altered protein sequences and non-cross-hybridizing, differentially regulated mRNAs.

Amino Acid Sequence↗

Differences in the number of embryonic and pseudo-beta-globin genes between HbA and HbB sheep.

DNA samples obtained from 8 goats, 1 moufflon, and 84 sheep with HbA, HbAB, and HbB belonging to different breeds were digested with BamHI, EcoRI, HindIII and PstI and probed with the 5' end of the goat epsilon IV- and psi beta Z-globin genes. Sheep homozygous for HbA show a different restriction pattern than sheep homozygous fo HbB with each of these endonucleases. The main difference is that HbB sheep lack the epsilon II and psi beta X genes. These results, in addition to those previously obtained using a probe specific for beta-globin genes, suggest that HbB sheep probably lack the preadult four-gene set. The DNAs from moufflon and sheep homozygous for HbA show indistinguishable restriction patterns. Furthermore, a number of restriction fragment length polymorphisms (RFLPs) are detected in the epsilon IV and psi beta Z DNA regions, and one HindIII RFLP in the epsilon VI DNA region.

Animals↗

Identification of bovine kappa-casein genotypes at the DNA level.

By using a bovine kappa-Cn cDNA as probe and the PstI endonuclease we demonstrate that the DNA restriction patterns of kappa-Cn AA and kappa-Cn BB cows are different. Besides two invariant fragments (about 6.8kb and 1.1kb) the former shows two fragments of about 4.3 kb and 0.3 kb and the latter one fragment of about 4.6 kb. kappa-Cn AB cows show intermediate pattern. Therefore, it is possible to determine the bovine kappa-Cn genotypes even in absence of gene product.

Animals↗

Triplication of alpha-globin genes is responsible for unusual alpha 113Leu/alpha 113His-globin chain ratios in sheep.

By investigations at the DNA and protein level, it has been shown that in sheep a previously detected, presumed quantitative allele of the II alpha 113His gene, displaying a reduced efficiency (called the II alpha 113His decreases gene), is carried by a chromosome bearing three alpha-globin loci. In particular, five sheep having an alpha 113Leu/alpha 113His-chain ratio of about 13:1 (13:1 phenotype) possessed the -I alpha 113Leu-II alpha 113Leu-/-I alpha 113Leu-II alpha 113Leu-III alpha 113His decreases genotype. One sheep showing a alpha 113Leu/alpha 113His-chain ratio of about 3:1 (3:1 phenotype) had the -I alpha 113Leu-II alpha 113His-/-I alpha 113Leu-II alpha 113Leu-III alpha 113His decreases genotype, while one sheep having a chain ratio of about 6:1 (6:1 phenotype) carried the -I alpha 113Leu-II alpha 113Leu-II alpha 113His decreases-/-I alpha 113Leu-II alpha 113Leu-III alpha 113His decreases genotype. Nineteen sheep, displaying the common phenotypes, all possessed the alpha alpha/alpha alpha gene arrangement. Furthermore, the possible location of the gene with reduced efficiency and the expression of the three genes in the triple alpha-globin loci chromosome are discussed.

Animals↗

Differences in the DNA restriction patterns between sheep with HbA and HbB.

DNA samples obtained from sheep homozygous for HbA, for HbB and heterozygous were subjected to Southern blot analysis using a goat beta F and a rabbit beta 1-globin gene as probes. Sheep homozygous for HbA show a different restriction pattern from that of sheep homozygous for HbB with each of the used endonucleases. The DNAs from moufflon and sheep homozygous for HbA show indistinguishable restriction patterns with some endonucleases. By means of double digestions it has been possible to construct restriction maps of the beta B and beta C genes and to confirm the absence of the beta C gene in HbB sheep.

Animals↗

Variation in the number of alpha-globin loci in sheep.

Southern blot analysis was used to compare sheep and goat restriction-endonuclease maps of the DNA region containing the alpha-globin genes. The identical digestion patterns observed in both species with three endonucleases (BamHI, BstEII, and PstI) show that in sheep a single chromosome normally bears two nonallelic alpha-globin genes positioned at the same distance as in goat. Variant digestion patterns with enzymes that cleave outside (BamHI and HindIII) and within (EcoRI) the alpha-globin loci allowed us to infer that chromosomes with different numbers of alpha-globin loci are also present in sheep. In particular, in the 60 sheep considered, four individuals were heterozygous (alpha alpha/alpha alpha alpha) and one was homozygous (alpha alpha alpha/alpha alpha alpha) for chromosomes with three loci and one individual was heterozygous for a chromosome with four loci (alpha alpha/alpha alpha alpha alpha). This variation in the number of copies of alpha-globin loci can be explained by means of unequal crossovers.

Animals↗

Polymorphic restriction sites in the horse beta-globin gene cluster.

Horse DNA samples digested with PstI and probed with the rabbit beta 1 globin gene show three phenotypes determined by one fragment of variable length (about 5.1 or 3.3 kb). Family data demonstrate that these fragments segregate as Mendelian alleles. The frequencies of the two alleles are 0.66 for the 3.3-kb fragment and 0.34 for the 5.1-kb one. Another polymorphism has been detected with BamHI. Again three phenotypes determined by two alleles (fragments of 7.5 and 3.8 kb) have been observed. Allelic frequencies of the 7.5- and 3.8-kb fragments are 0.24 and 0.76 respectively. The two polymorphic sites are non-randomly associated.

Animals↗

Restriction site polymorphisms in the pig beta-globin gene cluster.

A restriction fragment length polymorphism was detected in pig DNA digested with Hind III restriction endonuclease and probed with rabbit beta 1-globin gene. Eight different phenotypes were observed and for six of them family data demonstrated that they are determined by three alleles. As this polymorphism is not found with four other restriction endonucleases (Bam HI, Eco RI, Kpn I, and Pst I), single point mutations are proposed to explain the observed differences.

Animals↗

Restriction fragment length polymorphism in the 3' flanking region of the rabbit beta 1-globin gene.

By Southern blot analysis, a restriction fragment length polymorphism in the 3' flanking region of the rabbit beta 1-globin gene was detected. Two alleles, characterized by 9.7- and 12.4-kb BamHI fragments and by 15.3- and 18.0-kb HindIII fragments, have been detected in a small population of White New Zealand rabbits. The long allele is the most frequent (about 70%). The simultaneous changes in the restriction patterns of the two endonucleases and the constant distance between BamHI and HindIII sites in short and long fragments suggest the possibility that the two alleles arise from a rearrangement phenomenon involving a DNA segment 2.7 kb long. In addition, the presence of the two alleles in individuals genetically unrelated to the White New Zealand breed suggests that this polymorphism is widespread.

Animals↗